Figure 7-4: Antenna-mounted 1:1 Redundant Compact Outdoor SSPA System

46

Figure 7-5: Typical 1:1 Redundant System Outline

47

Figure 7-6: 1:1 Redundant System with Link Cable and Switch Cable installed

48

Figure 7-7: 1:1 System with RS232 Communication to each Amplifier

49

Figure 7-8: M&C Program “SSPA Settings” window

50

Figure 7-9: Adding a SSPA Monitor and Control Window

52

Figure 7-10: Add New Compact Outdoor SSPA window

53

Figure 7-11: Individual SSPA Operation Window

53

Figure 7-12: Paradise Datacom Universal M&C, Add Unit Menu Tree

54

Figure 7-13: Add 1:1 Redundant System Window

54

Figure 7-14: Paradise Datacom M&C showing configured 1:1 Redundant System ..

55

Figure 7-15: Dialog window, Affirm mute of on-line amplifier

55

Figure 7-16: Control Panel showing Unit 1 faulted and signal routed to Unit 2

56

Figure 7-17: Unit1 Status panel showing Summary and Temperature Faults

56

Figure 7-18: 1:1 Redundant System with RS485 Full Duplex Communication

57

Figure 7-19: 1:1 Redundant System with RS485 Half Duplex Communication

58

Figure 7-20: 1:2 Redundant System

59

Figure 7-21: 1:2 Redundant System Block Diagram

59

Figure 7-22: Outline, 1:2 Redundant System

60

Figure 7-23: Schematic, 1:2 Redundant System

61

Figure 7-24: 1:2 System with L Band Input and Internally Referenced BUCs

62

Figure 7-25: 1:2 System with External Reference; no reference to stand-by BUC ...

63

Figure 7-26: 1:2 System with (3) 10MHz inputs through the input switches

64

Figure 7-27: 1:2 System with External Reference using the combiner assembly

65

Figure 8-1: Phase Combined Amplifier System

67

Figure 8-2: 1:1 Fixed Phase Combined System with FPRC-1100 controller

68

Figure 8-3: Outline, 1:1 Fixed Phase Combined System

70

Figure 8-4: FPRC-1100 Phase Combined System Controller

71

Figure 8-5: 1:1 Phase Combined System with HPA control of BUC redundancy

72

Figure 8-6: Outline, 1:1 Fixed Phase Combined System with L-Band Input

74

Figure 8-7: Block Diagram, 1:2 Fixed Phase Combined System

75

Figure 8-8: Outline, 1:2 Fixed Phase Combined System

77

Figure 8-9: FPRC-1200 1:2 Phase Combined Redundant Controller

78

Figure 8-10: HPA 1 & HPA 3 on line with HPA 2 on standby

78

Figure 8-11: 1:2 Fixed Phase Combined Compact Outdoor System

79

Figure 9-1: Configurator, Compact Outdoor SSPA, BUC Options

81

Figure 9-2: Compact Outdoor Block Diagram of BUC / SSPA System

82

Figure 9-3: Compact Outdoor SSPB with PD25 Evolution Modem

85

Figure 10-1: Basic Communication Packet

87

Figure 10-2: Header Sub-Packet

87

Figure 10-3: Data Sub-Packet

88

Figure 10-4: Trailer Sub-Packet

91

Figure 10-5: Example 2 Protocol Debugger Window in M&C Software

99

Figure 10-6: Example 3 Protocol Debugger Window in M&C Software

102

Figure 11-1: Main Menu Structure

104

Figure 11-2: System Information menu structure

105

Figure 11-3: Universal M&C Settings Screen, Modifying Protocol Select

109

Figure 11-4: Verification to Change Protocol

109

Figure 11-5: Connection Description window

110

Operations Manual, HPA2, Compact Outdoor SSPA

205486 REV F

7

Page 7
Image 7
Paradise 205486 REV F manual Antenna-mounted 11 Redundant Compact Outdoor Sspa System

205486 REV F specifications

Paradise 205486 REV F is an innovative and cutting-edge solution that promises to reshape the landscape of various industries, primarily through its focus on sustainability, efficiency, and advanced technology integration. This model has garnered attention for its unique features that set it apart from its predecessors.

One of the main features of Paradise 205486 REV F is its environmentally friendly design. It utilizes sustainable materials in its construction, reducing the overall carbon footprint while promoting energy efficiency. This approach not only helps in conserving natural resources but also aligns with global efforts to combat climate change. The use of recyclable materials ensures that the product remains viable even at the end of its lifecycle.

Furthermore, the integrated technologies of Paradise 205486 REV F reflect a modern approach to automation and connectivity. It is equipped with advanced IoT (Internet of Things) capabilities, allowing for real-time data monitoring and analytics. This means users can track performance metrics and gather insights that drive informed decision-making. The system's connectivity with smart devices ensures seamless communication, enhancing user experience and operational efficiency.

The model also incorporates artificial intelligence that enables predictive maintenance and operational optimization. By analyzing data patterns, the AI system can foresee potential issues and address them before they escalate, minimizing downtime and ensuring continuous productivity. This feature is particularly valuable in industrial applications where time is critical.

Another standout characteristic of the Paradise 205486 REV F is its modular design. This flexibility allows users to customize configurations based on specific needs, ensuring that the solution can adapt to various environments and uses. Whether intended for industrial, commercial, or residential applications, the model can be tailored to suit various operational requirements, enhancing overall user satisfaction.

Moreover, the user interface is designed for intuitive interaction. With a focus on user-friendliness, the interface ensures that both expert users and beginners can navigate and utilize the system effectively. Comprehensive training and support resources further complement this, making the transition to the new system smooth and efficient.

In conclusion, Paradise 205486 REV F represents a significant advancement in sustainable technology. With its commitment to environmental stewardship, integration of cutting-edge IoT and AI technologies, and customizable modular design, it serves as a forward-thinking solution that meets the demands of today and anticipates the needs of tomorrow. This model not only elevates operational efficiency but also emphasizes the importance of sustainability in technological advancements.